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Transient heat conduction in a glass with chemically deposited SnS CuxS solar control coating

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  • Alvarez, G.
  • Estrada, C.A.

Abstract

The transient thermal performance of a chemically deposited thin film on a glass substrate is presented. Differential energy balances for the glass are set up assuming a one-dimensional transient state for normal incidence of the air mass to solar radiation. Using the reported properties of a SnS-CuxS thin film as a specific example, the net energy flow through a glass and the specific film were calculated for a time period. The effect of absorption in the film is specifically considered. The theoretical time histories of the surface temperatures of the glass plus solar control coating and the clear glass are plotted for an exterior temperature range of 0–50°C. The redistribution to the interior and exterior of the absorbed component of the solar radiation as well as the shading coefficient in time are evaluated for a constant convective heat transfer coefficient for ambient temperatures of 30 and 20°C. Also, the time constant of the system is given.

Suggested Citation

  • Alvarez, G. & Estrada, C.A., 1995. "Transient heat conduction in a glass with chemically deposited SnS CuxS solar control coating," Renewable Energy, Elsevier, vol. 6(8), pages 1023-1027.
  • Handle: RePEc:eee:renene:v:6:y:1995:i:8:p:1023-1027
    DOI: 10.1016/0960-1481(95)00093-0
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    1. Estrada-Gasca, C.A. & Alvarez-Garcia, G. & Nair, P.K., 1993. "Thermal performance of an architectural window with chemically deposited SnS CuxS solar control coating," Renewable Energy, Elsevier, vol. 3(6), pages 683-690.
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    Cited by:

    1. Xu Chen & Saihong Zhu & Tianyi Chen, 2022. "Thermal Parameters Calibration and Energy-Saving Evaluation of Spectral Selective Absorption Film Coated Glazing System Based on Heat Transfer Simulation," Energies, MDPI, vol. 15(8), pages 1-12, April.

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